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Calculation of Liquid Droplet Profiles from Closed-Form Solution of Young-Laplace Equation

机译:从Young-Laplace方程的闭式解计算液滴轮廓

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A closed-form solution is obtained for a two-dimensional version of the Young-Laplace equation governing the shape of the interface between immiscible liquids. This solution enables designers of liquid junctions (in, for example, soldering or ink printing applications) to calculate profiles using certain junction dimensions as boundary conditions in the equations. Calculated profiles are superimposed on silhouettes of liquid junctions to show the accuracy of the solutions (±5%). The paper also introduces a parameter called the coefficient of retardation which was found convenient in accounting for all the factors that permit variable contact angles to be observed in a given solid-liquid-air system.
机译:对于控制不混溶液体之间的界面形状的Young-Laplace方程的二维形式,可以获得封闭形式的解。该解决方案使液体连接的设计人员(例如在焊接或油墨印刷应用中)能够使用某些连接尺寸作为方程式中的边界条件来计算轮廓。计算的轮廓叠加在液体连接处的轮廓上,以显示溶液的精度(±5%)。本文还介绍了一个称为延迟系数的参数,该参数很方便考虑到所有因素,这些因素允许在给定的固液空气系统中观察到可变的接触角。

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